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    • 1. 发明专利
    • Water level monitoring device, water level monitoring method and water level monitoring method
    • 水位监测装置,水位监测方法和水位监测方法
    • JP2012198079A
    • 2012-10-18
    • JP2011061762
    • 2011-03-18
    • Fujitsu Ltd富士通株式会社
    • TAKAHASHI HIROSHI
    • G01F23/28E02B1/00
    • PROBLEM TO BE SOLVED: To enable a water level to be monitored without requiring preparations in advance.SOLUTION: A water level monitoring device 10 acquires an observation image picked up by a camera 30 so disposed as to be able to photograph a prescribed water area and covering an observation point that is to be observed out of the water area. Further, the water level monitoring device 10 detects, out of a plurality of lines that are obtained from the observation image by edge detection and whose mutually relative directions are similar, a first line whose shape does not vary among the frames of the observation image and is positioned uppermost on the observation image. Further, the water level monitoring device 10 detects, out of the plurality of lines that are obtained from the observation image by edge detection and whose mutually relative directions are similar, a second line whose shape varies among the frames of the observation image. Further, the water level monitoring device 10 monitors the water level at the observation point on the basis of the first line and the second line.
    • 要解决的问题:能够在不需要事先准备的情况下监视水位。 解决方案:水位监视装置10获取由照相机30拾取的观察图像,以便能够拍摄规定的水域并将待观察的观察点覆盖在水面以外。 此外,水位监视装置10通过边缘检测从彼此相对方向相似的观察图像获得的多行中检测到形状在观察图像的帧中不变化的第一线和 位于观察图像的最上方。 此外,水位监视装置10通过边缘检测从彼此相对方向相似的观察图像获得的多条线中检测出形状在观察图像的帧之间变化的第二线。 此外,水位监视装置10基于第一线和第二线监视观察点处的水位。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Information processing method, program, information processing device and information processing system
    • 信息处理方法,程序,信息处理装置和信息处理系统
    • JP2012150570A
    • 2012-08-09
    • JP2011007256
    • 2011-01-17
    • Fujitsu Ltd富士通株式会社
    • TAKAHASHI HIROSHIYANO MASAFUMISUZUKI TOMOYOSHI
    • G06F21/20G08B25/00
    • PROBLEM TO BE SOLVED: To provide an information processing method and the like capable of appropriately detecting an abnormality in accordance with increase/decrease information on a risk.SOLUTION: A control section of a server computer 1 determines whether or not a value based on input information exceeds a first threshold range stored in a storage section. When determining that the value exceeds the first threshold range, the control section also determines whether or not frequency or duration that the value exceeds the first threshold range also exceeds a second threshold range stored in the storage section. The control section also acquires increase/decrease information on a risk from a security server 4 and corrects the first threshold range and the second threshold range based on the acquired increase/decrease information on the risk. When determining the frequency or the duration exceeds the corrected second threshold, the control section outputs abnormality information indicating presence of an abnormality to a management computer 3.
    • 要解决的问题:提供能够根据关于风险的增减信息适当地检测异常的信息处理方法等。 解决方案:服务器计算机1的控制部分确定基于输入信息的值是否超过存储在存储部分中的第一阈值范围。 当确定该值超过第一阈值范围时,控制部分还确定值超过第一阈值范围的频率或持续时间是否也超过存储在存储部分中的第二阈值范围。 控制部还从安全性服务器4获取关于风险的增减信息,并且基于获取的关于风险的增减信息来修正第一阈值范围和第二阈值范围。 当确定频率或持续时间超过校正的第二阈值时,控制部分向管理计算机3输出指示出现异常的异常信息。版权所有:(C)2012,JPO&INPIT
    • 3. 发明专利
    • Resinous molded product
    • 树脂成型产品
    • JP2007077273A
    • 2007-03-29
    • JP2005266896
    • 2005-09-14
    • Fujitsu Ltd富士通株式会社
    • NAGARA KOHEIYUI YASUSHIYAMAGUCHI SHINGOTAKAHASHI HIROSHI
    • C08J7/04C08L101/00C08L101/16C09D193/00C09D199/00C09D201/00
    • C08J7/047C08J2300/16C08J2493/00
    • PROBLEM TO BE SOLVED: To provide a new resin molded product excellent in mechanical properties of a coated film and capable of controlling biodegradability inhibition when a biodegradable resin is biodegraded by microorganisms. SOLUTION: This resin molded product comprises a molded substrate 11 made of the biodegradable resin and a coated film 12 formed on a surface of the substrate 11, wherein the coated film 12 is formed by coating a mixture made of a petroleum based coating and a natural material. Because the natural material is rapidly biodegraded comparing with a synthetic resin contained in the petroleum based coating, the natural material does not inhibit biodegradation of the molded substrate 11 and can reduce residues after biodegradation. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种涂覆膜机械性能优异的新树脂成型体,并且当生物降解性树脂被微生物降解时能够控制生物降解性抑制。 解决方案:该树脂模制产品包括由可生物降解树脂制成的模塑基材11和形成在基材11的表面上的涂膜12,其中涂布膜12通过涂布由石油基涂料 和天然材料。 由于与石油基涂料中含有的合成树脂相比,天然材料快速生物降解,天然材料不会抑制模制基材11的生物降解,并且可以降低生物降解后的残留。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Heatsink mounting arrangement
    • 散热器安装
    • JP2005150192A
    • 2005-06-09
    • JP2003382140
    • 2003-11-12
    • Fujitsu Ltd富士通株式会社
    • TAKAHASHI HIROSHISAKAI HARUHIKO
    • H01L23/40
    • H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To reduce the deterioration of wiring density as much as possible and also improve user-friendliness, in a heatsink mounting arrangement. SOLUTION: The heatsink mounting arrangement is constituted by providing a fixed pin 6 and a heatsink presser foot component 10. The fixed pin 6 is inserted in an installation hole 3 established in a packaging substrate 2 on which a heating element 1 is mounted, and is provided with a coming-off stop flange 4 whose abutting surface with the packaging substrate 2 has insulation on one end, and is provided with a component coupling member 5 on the other end. On both ends of a presser foot 8 which is constructed over the upper surface of a heatsink 7 laid on the heating element 1 and presses down the heatsink 7, the heatsink presser foot component 10 is installed which is provided with an engaging part 9 with the pressing foot component coupling member 5 and capable of elastic deformation. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了在散热器安装布置中尽可能地减少布线密度的劣化并且还提高用户友好性。 解决方案:散热器安装装置通过提供固定销6和散热器压脚部件10构成。固定销6插入安装在安装有加热元件1的封装基板2上的安装孔3中 设置有与封装基板2的抵接面在一端具有绝缘性的脱离止动凸缘4,在另一端设置有部件连结部件5。 在构成在放置在加热元件1上的散热器7的上表面并按压散热器7的按压脚8的两端,安装有散热器压脚部件10,该部件设置有接合部9, 压脚组件联接构件5并且能够弹性变形。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Camera state monitor, camera state monitoring program, and camera state monitoring method
    • 相机状态监视器,摄像机状态监视程序和摄像机状态监视方法
    • JP2011171941A
    • 2011-09-01
    • JP2010032927
    • 2010-02-17
    • Fujitsu Ltd富士通株式会社
    • TAKAHASHI HIROSHI
    • H04N5/225H04N7/18H04N17/00
    • PROBLEM TO BE SOLVED: To precisely determine defect of a camera. SOLUTION: A camera state monitor includes: a first change rate calculation section 22 which calculates a data quantity when compressing video data photographed by one camera among a plurality of cameras C 1 to C n and calculates a change rate from a data quantity when compressing video data photographed before this by the one camera; a camera extraction section 24 which extracts a camera existing within a predetermined distance from the one camera and photographing a predetermined angle range with the angle photographed by the one camera as reference; a second change rate calculation section 26 which calculates the data quantity when compressing the video data photographed by the extracted camera and calculates the change rate from the data quantity when compressing the video data photographed before this by the extracted camera; and a defect determining section 28 which compares the change rate calculated by the first change rate calculation section with the change rate calculated by the second change rate calculation section and determines the defect of the one camera. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:精确确定相机的缺陷。 解决方案:相机状态监视器包括:第一变化率计算部分22,当将多个照相机C 1 中的一个摄像机拍摄的视频数据压缩到C 时,计算数据量, 并且在通过一个照相机压缩在此之前拍摄的视频数据时,从数据量计算变化率; 照相机提取部分24,其提取存在于距一个照相机预定距离内的照相机,并以一个相机作为参照拍摄的角度拍摄预定角度范围; 第二变化率计算部分26,当压缩由所提取的摄像机摄影的视频数据时,计算数据量,并且在压缩通过所提取的照相机拍摄的视频数据之前从数据量计算变化率; 以及缺陷确定部分28,其将由第一变化率计算部分计算的变化率与由第二变化率计算部分计算的变化率进行比较,并确定一个照相机的缺陷。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Method for working contour
    • 工作方法
    • JP2005332246A
    • 2005-12-02
    • JP2004150597
    • 2004-05-20
    • Fujitsu Ltd富士通株式会社
    • YAMAGUCHI SHINGOKANBAYASHI SATORUTAKAHASHI HIROSHI
    • B23Q15/00G05B19/4093G05B19/4097
    • PROBLEM TO BE SOLVED: To provide a contour working method by which an individual difference does not occur in work precision and work time with a simple method concerning the contour work method for working the contour of a work having a steep/gentle slope.
      SOLUTION: Contour cross sectional lines are generated by a designated pitch in the direction of a tool axis with respect to the work. A grid plane with the designated pitch grid generated therein is arranged so as to be orthogonally crossed with a Z-axis. Each contour cross sectional line is projected on the grid plane. Then the respective distributions of the grids where the contour cross sectional line projected on the grid plane passes and does not pass are retrieved.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种在工作精度和工作时间内不会发生个体差异的轮廓加工方法,其中使用关于用于加工具有陡峭/平缓坡度的工件的轮廓的轮廓加工方法的简单方法 。

      解决方案:轮廓横截面线在刀具轴线相对于工件的方向上以指定的间距产生。 具有在其中产生的指定间距格栅的格子平面布置成与Z轴正交。 每个轮廓横截面线投影在网格平面上。 然后,检索投影在网格平面上的轮廓横截面线通过并且不通过的网格的相应分布。 版权所有(C)2006,JPO&NCIPI

    • 8. 发明专利
    • 仮想マシン管理方法、仮想マシン管理プログラム及び仮想マシン管理装置
    • 虚拟机管理方法,虚拟机管理程序和虚拟机管理装置
    • JP2015035061A
    • 2015-02-19
    • JP2013165012
    • 2013-08-08
    • 富士通株式会社Fujitsu Ltd
    • TAKAHASHI HIROSHISUZUKI TOMOYOSHIYANO MASAFUMI
    • G06F21/57G06F9/46G06F9/50
    • 【課題】複数のVMが稼働するシステムにおいて、VMのセキュリティリスクの変化に応じて、VMを適切に隔離する。【解決手段】コンピュータが、第1動作環境又は第2動作環境のいずれかで稼働する対象仮想マシンのリスク指標値を所定の時間ごとに算出する。そして、対象仮想マシンに対応付けて記憶された基準時間の時間内に算出される指標値の集計値を、当該基準時間ごとに算出する。さらに、対象仮想マシンを、算出した集計値に応じて、第1動作環境から第2動作環境へ、又は、第2動作環境から第1動作環境へ移動させる。そして、対象仮想マシンの第1動作環境における稼働時間と第2動作環境における稼働時間との比率に応じて、基準時間を変更する。【選択図】図8
    • 要解决的问题:响应于多个VM操作的系统中的VM的安全风险的变化来适当地分离VM。解决方案:计算机计算在第一操作中操作的目标虚拟机的风险指数值 环境中或在每个预定时间的第二操作环境中。 对于每个参考时间计算通过对应于目标虚拟机存储的参考时间内计算的索引值的汇总值。 目标虚拟机根据计算出的摘要值从第一操作环境移动到第二操作环境,反之亦然。 参考时间根据第一操作环境中的利用时间与目标虚拟机的第二操作环境中的利用时间的比率而改变。
    • 9. 发明专利
    • Device, program and method for registration of event information
    • 用于注册活动信息的设备,程序和方法
    • JP2010238122A
    • 2010-10-21
    • JP2009087592
    • 2009-03-31
    • Fujitsu Ltd富士通株式会社
    • TAKAHASHI HIROSHI
    • G06F17/30H04N7/18
    • PROBLEM TO BE SOLVED: To properly register event information as metadata of browsing target data.
      SOLUTION: An event information registration device acquires the event information as information related to the browsing target data provided according to retrieval of a browser. Next, the event information registration device decides timing to register the event information as the metadata of the browsing target data based on at least one of a transition of a frequency at which the browsing target data are browsed by the browser, an emergency degree of a phenomenon indicated by the event information, and a target range of the phenomenon indicated by the event information. The event information registration device registers the acquired event information as the metadata of the browsing target data when deciding that the timing is timing to perform the registration.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:正确注册事件信息作为浏览目标数据的元数据。 解决方案:事件信息登记装置获取事件信息,作为与根据浏览器的检索提供的浏览目标数据相关的信息。 接下来,事件信息登记装置基于浏览器浏览浏览目标数据的频率的转变中的至少一个来决定将事件信息登记为浏览对象数据的元数据的定时,紧急程度 由事件信息指示的现象以及由事件信息指示的现象的目标范围。 事件信息登记装置在判定定时是进行登记的定时时,将取得的事件信息登记为浏览对象数据的元数据。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Machine tool controller
    • 机械工具控制器
    • JP2009012092A
    • 2009-01-22
    • JP2007174630
    • 2007-07-02
    • Fujitsu Ltd富士通株式会社
    • TAKAHASHI HIROSHINISHIYAMA SHUSAKU
    • B23Q15/00G05B19/4065G05B19/4069
    • Y02P80/114
    • PROBLEM TO BE SOLVED: To provide a machine tool controller calculating machining conditions for automatically maximizing energy efficiency before the machining operation of a machine tool, to activate the machine tool. SOLUTION: The machine tool controller has a machining center 10 equipped with: a means for calculating energy needed for cutting along a given tool trajectory; a means for calculating machining time by the tool trajectory and energy needed for the machining from the previously calculated energy needed for cutting based on a machining tool energy consumption model in which a manner of consuming energy of mechanical components constituting the machine tool is modeled; and a means for calculating the machining conditions for minimizing the energy needed for the machining, and controls the machining center 10 according to the calculated machining conditions. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供机床控制器计算加工条件以在机床的加工操作之前自动最大化能量效率,以激活机床。

      解决方案:机床控制器具有加工中心10,其具有:用于计算沿给定刀具轨迹切割所需的能量的装置; 用于根据加工工具能量消耗模型,根据先前计算出的切割所需的能量,通过刀具轨迹计算加工时间和加工所需的能量的装置,其中建模消耗构成机床的机械部件的能量的方式; 以及用于计算用于最小化加工所需能量的加工条件的装置,并且根据所计算的加工条件来控制加工中心10。 版权所有(C)2009,JPO&INPIT